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Effect of Soil Temperature and pH on Resistance of Soybean toHeterodera glycines

机译:土壤温度和pH值对大豆抗性的影响杂藻甘氨酸

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摘要

Soybean cyst nematode (SCN), Heterodera glycines Ichinohe, is a major pest of soybean, Glycine max L. Merr. Soybean cultivars resistant to SCN are commonly grown in nematode-infested fields. The objective of this study was to examine the stability of SCN resistance in soybean genotypes at different soil temperatures and pH levels. Reactions of five SCN-resistant genotypes, Peking, Plant Introduction (PI) 88788, Custer, Bedford, and Forrest, to SCN races 3, 5, and 14 were studied at 20, 26, and 32 C, and at soil pH's 5.5, 6.5, and 7.5. Soybean cultivar Essex was included as a susceptible check. Temperature, SCN race, soybean genotype, and their interactions significantly affected SCN reproduction. The effect of temperature on reproduction was quadratic with the three races producing significantly greater numbers of cysts at 26 C; however, reproduction on resistant genotypes remained at a low level. Higher numbers of females matured at the soil pH levels of 6.5 and 7.5 than at pH 5.5. Across the ranges of temperature and soil pH studied, resistance to SCN in the soybean genotypes remained stable.
机译:大豆孢囊线虫(SCN),杂种甘氨酸Ichinohe,是大豆的主要害虫,Glycine max L. Merr。抗SCN的大豆品种通常在线虫感染的田地中生长。这项研究的目的是研究在不同土壤温度和pH值下大豆基因型中SCN抗性的稳定性。在20、26和32 C以及土壤pH值为5.5的条件下,研究了5种抗SCN基因型北京大学,植物引种(PI)88788,Custer,Bedford和Forrest对SCN第3、5和14种的反应。 6.5和7.5。大豆品种艾塞克斯被列为易感检查。温度,SCN种族,大豆基因型及其相互作用显着影响SCN繁殖。温度对繁殖的影响是二次的,这三个族在26℃下产生的囊肿数量明显增加。但是,抗性基因型的繁殖仍处于较低水平。在pH值为6.5和7.5的土壤中,成熟的雌性数量要多于pH值为5.5的女性。在研究的温度和土壤pH范围内,大豆基因型对SCN的抗性保持稳定。

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